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阿拉斯加帝王蟹的丙酮酸激酶变体。两种具有不同且适应性动力学特性的形式之间存在温度依赖性相互转化的证据。

Pyruvate kinase variants of the Alaskan king-crab. Evidence for a temperature-dependent interconversion between two forms having distinct and adaptive kinetic properties.

作者信息

Somero G N

出版信息

Biochem J. 1969 Sep;114(2):237-41. doi: 10.1042/bj1140237.

Abstract
  1. Pyruvate kinase of Alaskan king-crab leg muscle exists in two kinetically distinct forms, each of which displays a different temperature-dependence in the K(m) for phosphoenolpyruvate. 2. A ;cold' variant of the enzyme has hyperbolic kinetics and exhibits a minimal K(m) for substrate at 5 degrees . At physiological concentrations of phosphoenolpyruvate the ;cold' enzyme is active only below 10 degrees . A ;warm' pyruvate kinase has a minimal K(m) for substrate at about 12 degrees . This enzyme displays sigmoidal kinetics and is likely to be inactive, at physiological substrate concentrations, at temperatures below 9 degrees . 3. The combined activities of these two pyruvate kinases yield highly temperature-independent rates of catalysis, at physiological substrate concentrations, over the range of habitat temperatures encountered by the organism, namely 4-12 degrees . 4. The two variants of pyruvate kinase do not appear to be isoenzymes in the conventional sense. Electrophoretic and electrofocus analyses revealed only single peaks of activity. 5. The results suggest that the ;warm' pyruvate kinase and the ;cold' pyruvate kinase are formed by a temperature-dependent interconversion of one protein species. This interconversion has major adaptive significance: as the temperature is lowered the ;warm' enzyme is converted into the ;cold' enzyme; the opposite situation obtains when the temperature is raised. Temperature changes thus mimic the effects noted for fructose 1,6-diphosphate on certain mammalian pyruvate kinases.
摘要
  1. 阿拉斯加帝王蟹腿部肌肉中的丙酮酸激酶存在两种动力学特性不同的形式,每种形式对磷酸烯醇丙酮酸的米氏常数(K(m))表现出不同的温度依赖性。2. 该酶的“冷”变体具有双曲线动力学,在5摄氏度时对底物的米氏常数最小。在磷酸烯醇丙酮酸的生理浓度下,“冷”酶仅在10摄氏度以下具有活性。“暖”丙酮酸激酶在约12摄氏度时对底物的米氏常数最小。这种酶表现出S形动力学,在生理底物浓度下,在9摄氏度以下的温度可能无活性。3. 在该生物体所经历的栖息地温度范围(即4 - 12摄氏度)内,在生理底物浓度下,这两种丙酮酸激酶的联合活性产生了高度不依赖温度的催化速率。4. 丙酮酸激酶的这两种变体似乎并非传统意义上的同工酶。电泳和等电聚焦分析仅显示出单一的活性峰。5. 结果表明,“暖”丙酮酸激酶和“冷”丙酮酸激酶是由一种蛋白质的温度依赖性相互转化形成的。这种相互转化具有重要的适应性意义:随着温度降低,“暖”酶转化为“冷”酶;温度升高时则情况相反。因此,温度变化模拟了果糖1,6 - 二磷酸对某些哺乳动物丙酮酸激酶的影响。

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